论文

松花江上游地区汞污染的化学生态效应

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  • 1. 东北师范大学城市与环境科学学院, 吉林 长春 130024;
    2. 中国科学院东北地理与 农业生态研究所, 吉林 长春 130012;
    3. 日本冈山大学资源与环境生物研究所, 日本 冈山 700-0046

收稿日期: 2004-10-18

  修回日期: 2005-05-12

  网络出版日期: 2005-11-20

基金资助

中国科学院 "九·五"资源与生态环境重点项目(KZ952-S1-201)资助。

Chemical Ecology Effect of Mercury Pollution on Upper Songhua River Areas

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  • 1. College of Urban and Environmental Sciences of Northeast Normal University, Changchun, Jilin 130024;
    2. Northeast Institute of Geography and Agricultural Ecology, Chinese Academy of Sciences, Changchun, Jilin 130012;
    3. Research Institute for Bioresource, Okayama University, Japan 700-0046

Received date: 2004-10-18

  Revised date: 2005-05-12

  Online published: 2005-11-20

摘要

采样分析了吉林省东部松花江上游金矿开采区及其附近水、土壤、动植物及河流沉积物样品中汞的含量,发现河流沉积物中汞的污染相当严重;受其影响当地的植物和两栖类动物——中国林蛙体内总汞和甲基汞含量也明显高于对照组。实验表明,林蛙内脏对汞的富集能力大于肌肉;秋季对汞的富集大于春季;河流沉积物中甲基汞的含量与林蛙体内甲基汞的含量有较好的正相关。汞污染的来源与区域内个体金矿的滥采滥排有直接关系,表明人类活动所产生的有毒重金属在地表过程中出现了化学生态效应。

本文引用格式

王宁, 朱颜明, 朴明玉, 孟丹 . 松花江上游地区汞污染的化学生态效应[J]. 地理科学, 2005 , 25(6) : 737 -741 . DOI: 10.13249/j.cnki.sgs.2005.06.737

Abstract

By analyzing the mercury contained in the waters,soil, propagations and sediments near the gold mine, on the upper Songhua River, which is along the east of Jilin Province, we have founded that the mercury pollution in river sediments was very serious. Being affected by it, the mercury concentration in the plants and the amphibian,Rana Chensinensis of the polluted samples was much higher than that of the unpolluted samples. The experiment results show that the accumulation of bowels is stronger than that of muscles, that the accumulation is stronger in autumn than that in spring, and that there is positive correlation between the methyl-mercury concentration in the river sediments and that in the Rana Chensinensis's body in the region. The mercury pollution is caused by the over-exploitation and random waste-discharging by the individually owned gold mines, and shows that the pollution and chemical ecology effect, of such poisonous heavy metal, manifested through the land-surface process, is caused by excessive human activities.

参考文献

[1] B.B.多布罗沃利斯基(著).朱颜明(译).微量元素地理学[M].北京:科学出版社,1987.
[2] Huang G P, Elliott H A. Interfacial reactions and the fate heavy metals insoil-water systems[J]. JWPCF. Mayo, 1977, 149(5): 645-756.
[3] Mol Jan H, Ramlal Joyce S, Lietar Carlos, et al. Mercury contamination in freshwater, estuarine, and marine fishes in relation to small-scale gold mining in Suriname[J].South America Environmental Research, 2001,86(2): 183-197.
[4] Mirlean Nicolai, Andrus Vlad E, Baisch Paulo. Mercury pollution sources in sediments of Patos Lagoon Estuary[J]. Southern Brazil Marine Pollution Bulletin, 2003, 46(3): 331-334.
[5] 刘永懋,王稔华,翟平阳.中国松花江甲基汞污染防治与标准研究[M].北京:科学出版社,1998.
[6] 王 宁,朱颜明.松花湖水源地重金属非点源污染调查[J].中国环境科学,2000, 20(5):419~421.
[7] 国家环保局《水和废水监测分析方法》编委会.水和废水监测分析方法[M].北京:中国环境科学出版社,1998. 446~448.
[8] 《环境与污染分析方法》科研协作组.环境与污染分析方法 (第二版)[M]. 北京:科学出版社,1987.
[9] 佘中盛,齐少华.松花湖及入湖河流沉积物的重金属污染研究[J]. 中国环境科学,1984, 3(6):36~79.
[10] 朱志宁,郎佩珍.12种有机物在鲤鱼体内富集与释放行为的研究[J].环境科学学报, 1987, 7(3): 339~345.
[11] 徐小清,丘昌强,邓冠强,等.三峡库区汞污染的化学生态效应[J].水生生物学报,1999, 23(3):197~203.
[12] 甘居利,贾晓平,蔡文贵. 水生动物体汞污染的生物学特性[J]. 动物学杂志,1999, 34(4):48~52.
[13] 傅立中,张新田,王宝清,等.吉林省中国林蛙养殖技术[J].中国中药杂志,1994, 19(4):211~214.
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